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首页> 外文期刊>Chemical Science International Journal >Non-linear Regression, a Better Approach for theOptimisation of Hydroquinone, Resorcinol andCatechol Adsorption by Chemically ActivatedCarbon Based on Monkey Kola (Cola lepidota k.schum) Waste
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Non-linear Regression, a Better Approach for theOptimisation of Hydroquinone, Resorcinol andCatechol Adsorption by Chemically ActivatedCarbon Based on Monkey Kola (Cola lepidota k.schum) Waste

机译:非线性回归,一种基于猴子可乐(Cola lepidota k.schum)废料的化学活化碳优化对苯二酚,间苯二酚和邻苯二酚吸附的较好方法

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摘要

Activated carbon was prepared from waste of monkey kola by pyrolysis and chemical activation using H_(3)PO_(4). It was characterised by Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD) and energy dispersive X–ray spectroscopy (EDX). Different physical properties namely bulk density, moisture content, volatile matter content, iodine number, pH of the solution, pHpzc and methylene blue adsorption were also determined. The activated carbon was used as an adsorbent for the removal of hydroquinone, catechol and resorcinol in solution. The process parameters of the sorption system such as pH of the solution, contact time and the amount of adsorbent were studied to understand their effects on pollutants removal. The optimised parameters are found to be pH: between 6 - 8, and the agitation time: 30 minutes. The experimental equilibrium data were analysed using five models (Langmuir, Freundlich, Redlich-Peterson, Sips, Langmuir-Freundlich). Non-linear regression analysis was employed, and three error analysis methods, correlation coefficient (R2), root-mean-square error (RMSE) and non-linear chi-square test (χ2) were considered to identify the best-fit isotherm and the best-fit kinetic model. Among all the adsorption isotherms considered, Langmuir was found to be a perfect representation of the experimental equilibrium data with high R2 low RMSE and good χ2. Batch kinetic experiments were carried out and experimental kinetics was fitted by non-linear regression. The sorption process was found to follow the pseudo first-order in case of the three pollutants. This study showed that the activated carbon can be used as a good adsorbent for the removal of phenol derivatives from water according to its maximum adsorption capacity which is about 66.57 μmol/g, 10.42μmol/g and 5.47 μmol/g respectively for hydroquinone, catechol and resorcinol.
机译:通过热解和使用H_(3)PO_(4)的化学活化作用,从猴可乐废料中制备了活性炭。它的特征在于傅立叶变换红外光谱(FTIR),X射线衍射(XRD)和能量色散X射线光谱(EDX)。还测定了不同的物理性质,即堆积密度,水分含量,挥发性物质含量,碘值,溶液的pH,pHpzc和亚甲基蓝吸附。活性炭用作吸附剂,用于去除溶液中的对苯二酚,邻苯二酚和间苯二酚。研究了吸附系统的工艺参数,例如溶液的pH,接触时间和吸附剂的量,以了解它们对污染物去除的影响。发现优化的参数是pH:6-8,并且搅拌时间:30分钟。使用五个模型(Langmuir,Freundlich,Redlich-Peterson,Sips,Langmuir-Freundlich)分析了实验平衡数据。采用非线性回归分析,并考虑了三种误差分析方法:相关系数(R2),均方根误差(RMSE)和非线性卡方检验(χ2),以确定最佳拟合等温线和最佳拟合动力学模型。在考虑的所有吸附等温线中,Langmuir被完美地表示为实验平衡数据,具有较高的R2,较低的RMSE和良好的χ2。进行间歇动力学实验,并通过非线性回归拟合实验动力学。发现在三种污染物的情况下,吸附过程遵循假一级。这项研究表明,活性炭具有最大的吸附能力,对苯二酚,邻苯二酚的最大吸附能力分别为66.57μmol/ g,10.42μmol/ g和5.47μmol/ g,可以用作从水中去除酚衍生物的良好吸附剂。和间苯二酚。

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